Carbon-rich (DQ) white dwarfs in the Sloan Digital Sky Survey
arXiv:1905.11174 · doi:10.1051/0004-6361/201935946
Abstract
Among the spectroscopically identified white dwarfs, a fraction smaller than 2% have spectra dominated by carbon lines, mainly molecular C2, but also in a smaller group by CI and CII lines. These are together called DQ white dwarfs. We want to derive atmospheric parameters Teff,log g, and carbon abundances for a large sample of these stars and discuss implications for their spectral evolution. Sloan Digital Sky Survey spectra and ugriz photometry were used, together with GAIA Data Release 2 parallaxes and G band photometry. These were fitted to synthetic spectra and theoretical photometry derived from model atmospheres. We found that the DQs hotter than Teff ~10000 K have masses ~0.4 Msun larger than the cooler ones, which have masses typical for the majority of white dwarfs, ~0.6 Msun. A significant fraction of the hotter objects with Teff > 14500 K have atmospheres dominated by carbon.
Accepted by Astronomy & Astrophysics
References in corpus (8)
- The frequency of planetary debris around young white dwarfs
- New white dwarf stars in the Sloan Digital Sky Survey Data Release 10
- On the Measurement of Fundamental Parameters of White Dwarfs in the Gaia Era
- White dwarf and subdwarf stars in the Sloan Digital Sky Survey Data Release 14
- Hot DQ White Dwarfs: Something Different
- New DQ white dwarfs in the Sloan Digital Sky Survey DR4: confirmation of two sequences
- C_2 in Peculiar DQ White Dwarfs
- Atmospheric parameters and carbon abundance for hot DB white dwarfs
Cited by in corpus (29)
- On the Spectral Evolution of Hot White Dwarf Stars. I. A Detailed Model-Atmosphere Analysis of Hot White Dwarfs from SDSS DR12
- The 100 pc White Dwarf Sample in the SDSS Footprint
- Current challenges in the physics of white dwarf stars
- Analysis of Helium-Rich White Dwarfs Polluted by Heavy Elements in the Gaia Era
- Evolutionary Models for the Remnant of the Merger of Two Carbon-Oxygen Core White Dwarfs
- New insight into the magnetism of degenerate stars from the analysis of a volume limited sample of white dwarfs
- New white dwarf envelope models and diffusion. Application to DQ white dwarfs
- Multi-Gigayear White Dwarf Cooling Delays from Clustering-Enhanced Gravitational Sedimentation
- An ultra-massive white dwarf with a mixed hydrogen-carbon atmosphere as a likely merger remnant
- Gaia Data Release 3: Cross-match of Gaia sources with variable objects from the literature
- white dwarfs within 40 pc III: spectroscopic observations of new candidates in the southern hemisphere
- From Hydrogen to Helium: The Spectral Evolution of White Dwarfs as Evidence for Convective Mixing
- On the Spectral Evolution of Hot White Dwarf Stars. III. The PG 1159DODBDQ Evolutionary Channel Revisited
- White dwarf and subdwarf stars in the Sloan Digital Sky Survey Data Release 16
- The spectral evolution of white dwarfs: where do we stand?
- The evolution of carbon-polluted white dwarfs at low effective temperatures
- The evolution of ultra-massive carbon oxygen white dwarfs
- A hidden population of white dwarfs with atmospheric carbon traces in the Gaia bifurcation
- Structure and evolution of ultra-massive white dwarfs in general relativity
- Data-Driven Selection and Spectral Classification of White Dwarf Stars
- The non-explosive stellar merging origin of the ultra-massive carbon-rich white dwarfs
- The structure and stability of massive hot white dwarfs
- Can we reveal the core-chemical composition of ultra-massive white dwarfs through their magnetic fields?
- Spectral analysis of cool white dwarfs accreting from planetary systems: from the UV to the optical
- Carbon-oxygen ultra-massive white dwarfs in general relativity
- Evidence of Spectral Evolution on the white dwarf sample from the Gaia Mission
- Missing metals in DQ stars: A simple explanation
- Atmospheric Temperature Inversions and He I 5876 Core Profile Structure in White Dwarfs
- Gaia white dwarfs with infrared excess I. The 100 pc catalogue